Constructing Self-Healing Polydimethylsiloxane through Molecular Structure Design and Metal Ion Bonding

聚二甲基硅氧烷 材料科学 极限抗拉强度 弹性体 化学工程 制作 金属 复合材料 冶金 医学 工程类 病理 替代医学
作者
Lvchao Qiu,Yutong Zhou,Zhoufeng Zhao,Qi Wang,Lijun Chu,Shipeng Wen
出处
期刊:Polymers [MDPI AG]
卷期号:16 (10): 1309-1309 被引量:2
标识
DOI:10.3390/polym16101309
摘要

Self-healing polydimethylsiloxane (PDMS) has garnered significant attention due to its potential applications across various fields. In this study, a functionalized modification of PDMS containing di-aminos was initially conducted using 2,6-pyridinedicarbonyl chloride to synthesize pyridine-PDMS (Py-PDMS). Subsequently, rare earth metal europium ions (Eu3+) were incorporated into Py-PDMS. Due to the coordination interaction between Eu3+ and organic ligands, a coordination cross-linking network was created within the Py-PDMS matrix, resulting in the fabrication of Eu3+-Py-PDMS elastomer. At a molar ratio of Eu3+ to ligands of 1:1, the tensile strength of Eu3+-Py-PDMS reached 1.4 MPa, with a fracture elongation of 824%. Due to the dynamic reversibility of coordination bonds, Eu3+-Py-PDMS with a metal-to-ligand molar ratio of 1:2 exhibited varying self-healing efficiencies at different temperatures. Notably, after 4 h of repair at 60 °C, its self-healing efficiency reached nearly 100%. Furthermore, the gas barrier properties of Eu3+-Py-PDMS with a molar ratio of 1:1 was improved compared with that of Eu3+-Py-PDMS with a molar ratio of 1:1. This study provides an effective strategy for the design and fabrication of PDMS with high mechanical strength, high gas barrier properties, and exceptional self-healing efficiency.

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